首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >AERODYNAMIC SHAPE OPTIMIZATION OF DIFFUSER AUGMENTED WIND TURBINE SHROUDS USING ASYNCHRONOUS DIFFERENTIAL EVOLUTION
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AERODYNAMIC SHAPE OPTIMIZATION OF DIFFUSER AUGMENTED WIND TURBINE SHROUDS USING ASYNCHRONOUS DIFFERENTIAL EVOLUTION

机译:扩散器增强风力涡轮机的空气动力学形状优化使用异步差分演化

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An adaptable numerical scheme for the aerodynamic shape optimization of axisymmetric diffuser-augmented wind turbine shrouds is demonstrated in this work, using an asynchronous and parallel version of a Differential Evolution (DE) algorithm. The simulation of the incompressible flow field about each candidate geometry is succeeded by means of an in-house Computational Fluid Dynamics (CFD) solver, that has been developed based on the specially modified, by the artificial compressibility approach, Navier-Stokes equations, expressed in non-dimensional form, for 2D-axisymmetric frames of reference. The discretization of the computational domain is made with 2D hybrid unstructured meshes, composed by both triangular and quadrilateral elements, combined with a node-centered finite-volume scheme, while the Free-Form Deformation (FFD) technique is applied, for both the parameterization of the design geometry and the morphing of the computational mesh. The required data transfer between the DE algorithm and the CFD solver is accomplished with appropriate text files, while the parallel implementation is achieved utilizing the Message Passing Interface (MPI) library functions. Further acceleration of the optimization procedure is succeeded by the combination of the DE with surrogate models, in order to replace the costly CFD-based evaluations of the candidate solutions with fast, but approximate estimations of their cost function.
机译:对于轴对称扩散器 - 增强的风力涡轮机护罩的空气动力学形状的优化可适应数值格式是体现在这项工作中,使用微分进化(DE)算法的异步和并行版本。对每个候选几何不可压缩流场的模拟是通过一个内部的计算流体动力学(CFD)求解器,已根据专门修改的开发,由人工压缩方法,Navier-Stokes方程,表达手段成功在无量纲的形式,参考2D轴对称帧。计算域的离散化用二维混合非结构化网格做,通过两个三角形和四边形元件,与一个节点为中心的有限体积方案相结合构成,在施加自由变形(FFD)的技术,对于参数化设计几何形状和计算网格的变形。在DE算法和CFD之间所需的数据传输解算器与适当的文本文件来实现,而并行实现,实现利用该消息传递接口(MPI)库函数。优化过程的进一步加速度由DE与替代模型的组合成功,为了快速更换候选解决方案的高成本基于CFD的评价,但他们的成本函数的近似估计。

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